Course Details

Intro

ET3034TUx: Solar Energy

 with  Arno Smets
*Note - This is an Archived course* This is a past/archived course. At this time, you can only explore this course in a self-paced fashion. Certain features of this course may not be active, but many people enjoy watching the videos and working with the materials. Make sure to check for reruns of this course. The course Solar Energy will teach you to design a complete photovoltaic system. The course will introduce you to the technology that converts solar energy into electricity, heat and solar fuels with a main focus on electricity generation.  Photovoltaic (PV) devices are presented as advanced semiconductor devices that deliver electricity directly from sunlight. The emphasis is on understanding the working principle of a solar cell, fabrication of solar cells, PV module construction and the design of a PV system. You will understand the principles of the photovoltaic conversion (the conversion of light into electricity). You will learn about the advantages, limitations and challenges of different solar cell technologies, such as crystalline silicon solar cell technology, thin film solar cell technologies and the latest novel solar cell concepts as studied on lab-scale.  The course will treat the specifications of solar modules and show you how to design a complete solar system for any particular application. The suitable semiconductor materials, device physics, and fabrication technologies for solar cells are presented. The guidelines for design of a complete solar cell system for household application are explained. Alternative storage approaches through solar fuels or conversion of solar energy in to heat will be discussed.  The cost aspects, market development, and the application areas of solar cells are presented. After completion of the course, you will be able to: a) explain the various concepts to convert solar energy in to electricity, heat and solar fuels  b) explain the physical working principles of photovoltaic conversion in solar cells c) recognize and describe the various solar cell technologies, their current status and future technological challenges d) analyze the performance of solar cells and modules e) design a complete photovoltaic system for any particular application on paper To celebrate this first MOOC on Solar Energy the best student of the course will be invited to the Delft University of Technology for a Delft Solar Energy Center course of one week, to get hands-on lab experience with all the concepts taught in this Solar Energy course. Education method The class will consist of a collection of lecture videos, each between eight and twelve minutes in length. The course contains exercises and assignments, which are additional to the video lectures.  The best student of the course will be invited to the Delft University of Technology for a Photovoltaics Lab course of one week, to get hands-on lab experience with all the concepts taught in this Solar Energy course. Before your course starts, try the new edX Demo where you can explore the fun, interactive learning environment and virtual labs. Learn more.
Pace Finished
Language English
Provider edX
Calendar 7 weeks long
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What are MOOCs?
MOOCs stand for Massive Open Online Courses. These are free online courses from universities around the world (eg. Stanford Harvard MIT) offered to anyone with an internet connection.
How do I register?
To register for a course, click on "Go to Class" button on the course page. This will take you to the providers website where you can register for the course.
How do these MOOCs or free online courses work?
MOOCs are designed for an online audience, teaching primarily through short (5-20 min.) pre recorded video lectures, that you watch on weekly schedule when convenient for you.  They also have student discussion forums, homework/assignments, and online quizzes or exams.

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6 months ago
Felipe Nogueira Sponfeldner partially completed this course.
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